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Optimization of simultaneously propagating multiple fractures in hydraulic fracturing to achieve uniform growth using data-based model reduction

机译:优化液压压裂中多重骨折的优化,实现使用基于数据的模型减少实现均匀生长的

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摘要

In multi-stage hydraulic fracturing treatments, simultaneously propagating multiple fractures with close spacing often induce non-uniform fracture development due to stress shadow effects, resulting in one or two dominant fractures due to the uneven distribution of fracturing fluids. Motivated by this, first, we present a dynamic model of hydraulic fractures to describe stress-shadow effects in simultaneously propagating multiple fractures. Second, we develop a new model order-reduction technique for simultaneously propagating multiple fractures by integrating the analytical models to calculate the pressure drop due to perforation friction and wellbore friction, and a data-based reduced-order model (ROM) developed using the data generated from the high-fidelity process model to describe the pressure drop along the fractures due to stress-shadow effects. Lastly, we propose a model-based design technique by utilizing the integrated ROM and the limited entry design technique to compute the flow rate of fracturing fluids and the perforation conditions which will promote equal distribution of fracturing fluids to achieve uniform growth of multiple fractures while mitigating the undesired stress-shadow effects. We present a base case with the uneven development of multiple fractures and demonstrate that the proposed design technique is able to outperform the base case with respect to achieving uniform fracture growth, by explicitly handling stress-shadow effects. Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:在多级液压压裂处理中,同时传播多个骨折,近距离间距通常由于压力阴影效应而诱导不均匀的骨折发育,导致压裂液的不均匀分布引起的一个或两个显性骨折。由此激励,首先,我们介绍了一种动态模型的液压骨折,描述了同时传播多重裂缝的压力阴影效果。其次,我们开发了一种新的模型顺序减少技术,用于通过集成分析模型来同时传播多个裂缝,以计算由于穿孔摩擦和井筒摩擦引起的压降,以及使用数据开发的基于数据的减少级模型(ROM)由高保真过程模型产生,以描述由于压力阴影效应引起的裂缝沿着裂缝的压降。最后,我们通过利用集成ROM和有限的进入设计技术提出基于模型的设计技术,以计算压裂液的流量和穿孔条件,这将促进压裂液的平等分布,以实现多重骨折的同时增加多重骨折不期望的压力影效应。我们在多个裂缝的不均匀发展中提出了一个基本情况,并证明所提出的设计技术能够通过明确处理应力阴影效应来实现均匀的裂缝生长的基本情况。 elsevier b.v出版。代表化学工程师机构。

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